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Anion- or Cation-Exchange Membranes for NaBH4/H2O2 Fuel Cells?

机译:NaBH4 / H2O2燃料电池的阴离子交换膜或阳离子交换膜?

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摘要

Direct borohydride fuel cells (DBFC), which operate on sodium borohydride (NaBH4) as the fuel, and hydrogen peroxide (H2O2) as the oxidant, are receiving increasing attention. This is due to their promising use as power sources for space and underwater applications, where air is not available and gas storage poses obvious problems. One key factor to improve the performance of DBFCs concerns the type of separator used. Both anion- and cation-exchange membranes may be considered as potential separators for DBFC. In the present paper, the effect of the membrane type on the performance of laboratory NaBH4/H2O2 fuel cells using Pt electrodes is studied at room temperature. Two commercial ion-exchange membranes from Membranes International Inc., an anion-exchange membrane (AMI-7001S) and a cation-exchange membrane (CMI-7000S), are tested as ionic separators for the DBFC. The membranes are compared directly by the observation and analysis of the corresponding DBFC’s performance. Cell polarization, power density, stability, and durability tests are used in the membranes’ evaluation. Energy densities and specific capacities are estimated. Most tests conducted, clearly indicate a superior performance of the cation-exchange membranes over the anion-exchange membrane. The two membranes are also compared with several other previously tested commercial membranes. For long term cell operation, these membranes seem to outperform the stability of the benchmark Nafion membranes but further studies are still required to improve their instantaneous power load.
机译:直接硼氢化物燃料电池(DBFC)以硼氢化钠(NaBH4)为燃料,过氧化氢(H2O2)为氧化剂,受到越来越多的关注。这是由于它们有希望用作空间和水下应用的动力源,在这些应用中,空气不可用,气体存储也存在明显的问题。改善DBFC性能的一个关键因素是所用分隔符的类型。阴离子交换膜和阳离子交换膜都可以视为DBFC的潜在分离器。本文在室温下研究了膜类型对使用Pt电极的实验室NaBH4 / H2O2燃料电池性能的影响。测试了Membranes International Inc.的两种商业化离子交换膜,即阴离子交换膜(AMI-7001S)和阳离子交换膜(CMI-7000S)作为DBFC的离子分离器。通过观察和分析相应DBFC的性能直接比较膜。膜的评估使用了细胞极化,功率密度,稳定性和耐久性测试。估计能量密度和比容量。进行的大多数测试清楚地表明,阳离子交换膜的性能优于阴离子交换膜。还将这两种膜与其他几种先前测试过的商业膜进行了比较。对于长期的电池操作,这些膜似乎要优于基准Nafion膜的稳定性,但仍需要进一步研究以提高其瞬时功率负荷。

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